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Inhibition of the PI3K pathway: hope we can believe in?
Michiel S van der Heijden1, René Bernards
1Division of Molecular Carcinogenesis, Center for Biomedical Genetics and Cancer Genomics Center, The Netherlands Cancer Institute, Amsterdam, The Netherlands.
Abstract:
The phosphoinositide 3-kinase (PI3K) pathway is one of the most commonly activated pathways in human cancer and has roles in cell proliferation, apoptosis, protein synthesis, and metabolism. The PI3K pathway can be activated by amplification or activating mutation of upstream receptor tyrosine kinases, and by mutations or deletions downstream in the pathway. Trastuzumab, a monoclonal antibody targeting the human epidermal growth factor receptor 2 (HER2), has been one of the most successful and most widely used targeted therapies. However, many HER2-positive cancers are not sensitive to HER2-based therapies or become resistant during treatment; downstream activation of the pathway is one of the causes of resistance. Because of the common activation of the PI3K pathway in cancer, compounds targeting proteins downstream in the pathway have been developed in recent years. The mammalian target of rapamycin (mTOR) inhibitors everolimus and temsirolimus have been shown to be beneficial in certain cancer types; many other inhibitors of the PI3K pathway are in various stages of clinical development. Ongoing research should clarify which molecular cancer subtypes are most susceptible to specific compounds and explore combinatorial approaches, ultimately leading to individualized patient treatment.
Insights
The phosphoinositide 3-kinase (PI3K) pathway is frequently activated in cancer. Targeting this pathway, including with mTOR inhibitors, offers new therapeutic strategies for overcoming resistance to treatments like trastuzumab.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The phosphoinositide 3-kinase (PI3K) pathway is crucial for cell functions and commonly dysregulated in human cancers.
- Targeted therapies like trastuzumab (anti-HER2) are effective but face resistance due to downstream PI3K pathway activation.
Purpose of the Study:
- To review the role of the PI3K pathway in cancer and its implications for targeted therapy resistance.
- To discuss the development and clinical potential of PI3K pathway inhibitors.
Main Methods:
- Literature review of PI3K pathway activation in cancer.
- Analysis of resistance mechanisms to HER2-targeted therapies.
- Overview of current and developing PI3K and mTOR inhibitors.
Main Results:
- PI3K pathway activation, via upstream or downstream alterations, is a common driver in various cancers.
- Resistance to HER2-targeted therapies can occur due to PI3K pathway reactivation.
- mTOR inhibitors (everolimus, temsirolimus) show promise, with other PI3K pathway inhibitors in clinical trials.
Conclusions:
- Targeting the PI3K pathway presents a promising strategy to overcome resistance in HER2-positive cancers and other malignancies.
- Future research focusing on molecular subtypes and combination therapies will guide individualized patient treatment.
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